Thibault G and Ng DT (2012) The endoplasmic reticulum-associated degradation pathways of budding yeast. Cold Spring Harb Perspect Biol 4(12)
Abstract: Protein misfolding is a common cellular event that can produce intrinsically harmful products. To reduce the risk, quality control mechanisms are deployed to detect and eliminate misfolded, aggregated, and unassembled proteins. In the secretory pathway, it is mainly the endoplasmic reticulum-associated degradation (ERAD) pathways that perform this role. Here, specialized factors are organized to monitor and process the folded states of nascent polypeptides. Despite the complex structures, topologies, and posttranslational modifications of client molecules, the ER mechanisms are the best understood among all protein quality-control systems. This is the result of convergent and sometimes serendipitous discoveries by researchers from diverse fields. Although major advances in ER quality control and ERAD came from all model organisms, this review will focus on the discoveries culminating from the simple budding yeast.
| Status: Published | Type: Journal Article | Research Support, Non-U.S. Gov't | Review | PubMed ID: 23209158 |
Topics addressed in this paper
Number of different genes curated to this paper: 45
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| Topics | Genes linked to topics (#1 - 10 ) | |||||||||
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| ADD37 | ATG14 | ATG19 | BST1 | CDC48 | CNE1 | CUE1 | DER1 | DFM1 | DSK2 | |
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| Topics | Genes linked to topics (#21 - 30 ) | |||||||||
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| MNS1 | NPL4 | PBN1 | POF1 | RAD23 | RPT4 | SCJ1 | SEC13 | SEC61 | SHP1 | |
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- To find other papers on a gene and topic, click on the colored ball in the appropriate box.
- displays other papers with information about that topic for that gene.
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The topic is addressed in these papers but does not describe a specific gene or chromosomal feature.
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